Author:
El Banna Amer A.,McKenna Gregory B.
Abstract
AbstractUltra-stable fluoropolymer glasses were created using vacuum pyrolysis deposition that show large fictive temperature Tf reductions relative to the glass transition temperature Tg of the rejuvenated material. Tf was also found to be 11.4 K below the dynamic VFT temperature TVFT. Glass films with various thickness (200–1150 nm) were deposited onto different temperature substrates. Glassy films were characterized using rapid-chip calorimetry, Fourier-transform infrared spectroscopy and intrinsic viscosity measurements. Large enthalpy overshoots were observed upon heating and a Tf reduction of 62.6 K relative to the Tg of 348 K was observed. This reduction exceeds values reported for a 20-million-year-old amber and another amorphous fluoropolymer and is below the putative Kauzmann temperature TK for the material as related to TVFT. These results challenge the importance of the Kauzmann paradox in glass-formation and illustrates a powerful method for the exploration of material dynamics deep in the glassy state (Tf < T < Tg).
Funder
Division of Materials Research
John R. Bradford Endowment at Texas Tech University
Office of Naval Research
Publisher
Springer Science and Business Media LLC
Reference76 articles.
1. Alcoutlabi, M. & McKenna, G. B. Effects of confinement on material behavior at the nanometer size scale. J. Phys. Condens. Matter 17, R461 (2005).
2. Keddie, J. L., Jones, R. A. & Cory, R. A. Size-dependent depression of the glass transition temperature in polymer films. Europhys. Lett. 27, 59 (1994).
3. Keddie, J. L., Jones, R. A. & Cory, R. A. Polymer dynamics in thin films. In Modern Aspects of Colloidal Dispersions (eds Ottewill, R. H. & Rennie, A. R.) (Springer, Dordrecht, 1998).
4. McKenna, G. B. Glass transition: Challenges of extreme timescales and other interesting problems. Rubber Chem. Technol. 93, 1 (2020).
5. Forrest, J. A., Dalnoki-Veress, K., Stevens, J. R. & Dutcher, J. R. Effect of free surfaces on the glass transition temperature of thin polymer films. Phys. Rev. Lett. 77, 4108 (1996).
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